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首页> 外文期刊>Clinical neurophysiology >Acute effects of thalamic deep brain stimulation and thalamotomy on sensorimotor cortex local field potentials in essential tremor
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Acute effects of thalamic deep brain stimulation and thalamotomy on sensorimotor cortex local field potentials in essential tremor

机译:丘脑深部脑刺激和丘脑置换对原发性震颤感觉运动皮层局部场电位的急性影响

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Objective: Essential tremor (ET) is characterized by an action tremor believed to be due to excessive theta-alpha activity in the cerebello-thalamo-cortical system. This study aimed to test the hypothesis that therapeutic thalamic stimulation in patients with ET decreases theta-alpha oscillatory activity in primary motor (M1) and sensory (S1) cortices. Methods: During surgical treatment of ET in 10 patients, an electrocorticography (ECoG) strip electrode was placed temporarily over the arm region of M1 and S1. Local field potentials (LFP) were recorded at rest, during a tremor-inducing posture, during acute therapeutic thalamic stimulation, and following therapeutic thalamotomy (three patients). Power spectral density (PSD) was calculated using the Fast Fourier Transform. Results: At rest, alpha activity (8-13. Hz) in M1 was significantly decreased during high-frequency stimulation, while theta activity (4-8. Hz) decreased in S1. Following thalamotomy, theta and beta (13-30. Hz) was increased in M1. Induction of postural tremor reduced M1 theta, alpha and beta activity compared to the resting state. Conclusions: High-frequency thalamic deep brain stimulation (DBS) significantly reduces alpha oscillatory activity in the primary motor cortex of patients with ET, though this change is probably not critical for therapeutic efficacy. Significance: We demonstrate that ECoG can be effectively used to study the effect of subcortical stimulation on cortical oscillations.
机译:目的:原发性震颤(ET)的特征在于活动性震颤,该震颤被认为是由于小脑-丘脑-皮质系统中过度的theta-alpha活性所致。这项研究旨在检验以下假设:ET患者的治疗性丘脑刺激会降低初级运动(M1)和感觉(S1)皮质的theta-α振荡活性。方法:在10例ET的外科手术治疗过程中,将皮质电图(ECoG)条形电极临时放置在M1和S1的手臂区域上。在休息时,在诱发震颤的姿势中,在急性治疗性丘脑刺激期间以及在治疗性丘脑炎之后(3例患者)记录局部场电位(LFP)。使用快速傅里叶变换计算功率谱密度(PSD)。结果:静止时,高频刺激下M1中的α活性(8-13。Hz)显着降低,而S1中theta活性(4-8。Hz)降低。丘脑炎之后,M1中的θ和β(13-30。Hz)增加。与静息状态相比,姿势性震颤的诱导降低了M1θ,α和β活性。结论:高频丘脑深部脑刺激(DBS)可以显着降低ET患者原发性运动皮层的α振荡活性,尽管这种改变可能对治疗效果并不重要。启示:我们证明ECoG可以有效地研究皮层下刺激对皮层振荡的影响。

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